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双氢键诱导的紧密H型π-π堆积增强苝二酰亚胺超分子中的快速载流子转移,实现高析氧性能。

Double hydrogen bonding-induced compact H-type π-π stacking enhancing rapid carrier transfer in perylene diimide supramolecules achieving high oxygen evolution performance.

作者信息

Meng Shulin, Hu Yinan, Zhao Haocheng, Yao Huiting, Wu Yuling, Xue Jinbo, Shen Qianqian

机构信息

College of Materials Science and Engineering, Taiyuan University of Technology, Taiyuan 030024, China; Key Laboratory of Interface Science and Engineering in Advanced Materials, Taiyuan University of Technology, Taiyuan 030024, China.

Department of Mechanical and Electrical Engineering, Shanxi Institute of Energy, Jinzhong 030600, China.

出版信息

J Colloid Interface Sci. 2024 Jul 15;666:201-209. doi: 10.1016/j.jcis.2024.04.030. Epub 2024 Apr 4.

Abstract

Perylene diimides (PDI) are widely used in photocatalytic oxygen evolution due to their deep valence band potentials. Here, we report the synthesis of a unique supramolecular photocatalyst (designated s-PDI-P1) by introducing hydroxyl and carboxyl groups at the imide position of PDI. This modification allows the formation of intermolecular double hydrogen bond structures between the hydroxyl groups, oxygen atoms on the perylene cores and the carboxyl groups. The resulting double hydrogen bonding structures reduce lateral slip and promote the formation of supramolecular structures with H-type π-π stacking. In addition, the intermolecular hydrogen bonding interactions between the hydroxyl groups and the oxygen atoms on the perylene cores bring the PDI molecules closer together, enhancing the conjugation of the PDI supramolecules and facilitating the formation of ultrathin nanosheet-like structures. In this study, we successfully constructed ultrathin nanosheets of the supramolecular photocatalyst s-PDI-P1 with a compact H-type π-π stacking structure, which exhibited enhanced charge transfer capability, shorter charge migration distance, and achieved a high photocatalytic oxygen evolution rate of 3.23 mmolgh. These results highlight the potential of intermolecular double hydrogen bond structures to improve the separation and migration driving force of photogenerated charges, thus providing a novel design strategy for organic photocatalysts.

摘要

苝二亚胺(PDI)因其深价带电位而广泛应用于光催化析氧。在此,我们报道了通过在PDI的酰亚胺位置引入羟基和羧基来合成一种独特的超分子光催化剂(命名为s-PDI-P1)。这种修饰使得羟基、苝核上的氧原子与羧基之间形成分子间双氢键结构。由此产生的双氢键结构减少了横向滑移,并促进了具有H型π-π堆积的超分子结构的形成。此外,羟基与苝核上的氧原子之间的分子间氢键相互作用使PDI分子靠得更近,增强了PDI超分子的共轭作用,并促进了超薄纳米片状结构的形成。在本研究中,我们成功构建了具有紧密H型π-π堆积结构的超分子光催化剂s-PDI-P1的超薄纳米片,其表现出增强的电荷转移能力、较短的电荷迁移距离,并实现了3.23 mmolgh的高光催化析氧速率。这些结果突出了分子间双氢键结构在改善光生电荷的分离和迁移驱动力方面的潜力,从而为有机光催化剂提供了一种新颖的设计策略。

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